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Soliton-like solutions of a derivative nonlinear Schrödinger equation with variable coefficients in inhomogeneous optical fibers

机译:非均质光纤中具有变系数的导数非线性Schrödinger方程的类孤子解

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Under investigation in this paper is a derivative nonlinear Schrödinger equation with variable coefficients, which governs the propagation of the subpicosecond soliton pulses in inhomogeneous optical fibers. Through the nonisospectral Kaup–Newell scheme, the Lax pair is constructed with some constraints on the variable coefficients. Under the integrable conditions, bright one- and multi-soliton-like solutions are derived via the Hirota method. By suitably choosing the dispersion coefficient function, several types of inhomogeneous solitons are obtained in, respectively: (1) exponentially decreasing dispersion profile, (2) linearly decreasing dispersion profile, (3) exponentially increasing dispersion profile, and (4) periodically fluctuating dispersion profile. The intensity of the inhomogeneous soliton can be controlled by means of modifying the loss/gain term. Asymptotic analysis of the two-soliton-like solution is performed, which shows that the changes of the widths, amplitudes, and energies before and after the collision are completely caused by the variable coefficients, but have nothing to do with the collision between two soliton-like envelopes. Through suitable choices of variable coefficients, figures are plotted to illustrate the collision behavior between two inhomogeneous solitons, which has some potential applications in the real optical communication systems.
机译:本文正在研究的是具有可变系数的导数非线性Schrödinger方程,该方程控制亚皮秒孤子脉冲在不均匀光纤中的传播。通过非等光谱的Kaup–Newell方案,构造了Lax对,并对可变系数施加了一些约束。在可积条件下,通过Hirota方法得出明亮的单孤子和多孤子溶液。通过适当选择色散系数函数,可以分别得到以下几种类型的非均匀孤子:(1)色散曲线呈指数递减;(2)色散曲线呈线性递减;(3)色散曲线呈指数递增;(4)周期性波动的色散轮廓。可以通过修改损耗/增益项来控制非均匀孤子的强度。对类两个孤子解进行了渐近分析,结果表明,碰撞前后的宽度,振幅和能量的变化完全是由可变系数引起的,但与两个孤子之间的碰撞无关样的信封。通过适当选择可变系数,可以绘制图形来说明两个不均匀孤子之间的碰撞行为,这在实际的光通信系统中具有潜在的应用。

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